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Photochemical Deracemization of Allenes and Subsequent Chirality Transfer

机译:艾伦斯和随后的手性转移的光化学透明度

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摘要

Trisubstituted allenes with a 3-(1 '-alkenylidene)-pyrrolidin-2-one motif were successfully deracemized (13 examples, 86-98 % ee) employing visible light (lambda=420 nm) and a chiral triplet sensitizer as the catalyst (2.5 mol %). The photocatalyst likely operates by selective recognition of one allene enantiomer via hydrogen bonds and by a triplet-sensitized racemization process. Even a tetrasubstituted allene (45 % ee) and a seven-membered 3-(1 '-alkenylidene)-azepan-2-one (62 % ee) could be enantiomerically enriched under the chosen conditions. It was shown that the axial chirality of the allenes can be converted into point chirality by a Diels-Alder (94-97 % ee) or a bromination reaction (91 % ee). Ring opening of the five-membered pyrrolidin-2-one was achieved without significantly compromising the integrity of the chirality axis (92 % ee).
机译:用3-(1'Allenylideny)-Pyrrolidin-2-One Motif的三取代的甲烯(13例,86-98%EE)采用可见光(Lambda = 420nm)和作为催化剂的手性三联敏化剂( 2.5摩尔%)。 光催化剂可能通过通过氢键和三重致敏的外消旋化方法选择性识别一个联烯对映体来操作。 甚至四取代的联烯(45%EE)和七元3-(1'-链烯基)-Azepan-2-one(62%EE)可以在所选条件下进行致映体富集。 结果表明,烯丙烯醚的轴向手性可以通过Diels-Alder(94-97%EE)或溴化反应(91%EE)转化为点胆管。 实现了五元吡咯烷-2-one的环开口,而不会显着损害手性轴的完整性(92%EE)。

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